$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

Composite mixed conductor membranes for producing oxygen 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • B01D-053/22
  • B01D-071/02
출원번호 US-0945320 (1992-09-15)
발명자 / 주소
  • Thorogood Robert M. (Macungie PA) Srinivasan Rajagopalan (Allentown PA) Yee Terrence F. (Macungie PA) Drake Miles P. (Allentown PA)
출원인 / 주소
  • Air Products and Chemicals, Inc. (Allentown PA 02)
인용정보 피인용 횟수 : 98  인용 특허 : 0

초록

The present invention relates to novel multi-layer composite solid state membranes which are capable of separating oxygen from oxygen-containing gaseous mixtures at elevated temperatures. The membranes comprise a multicomponent metallic oxide porous layer having an average pore radius of less than a

대표청구항

A membrane capable of separating oxygen from an oxygen-containing gaseous mixture, which membrane comprises a porous layer having an average pore radius of less than about 10 micrometers and a dense layer having no connected through porosity wherein the porous layer and the dense layer are contiguou

이 특허를 인용한 특허 (98)

  1. Breshears, John Edward, Architectural heat and moisture exchange.
  2. Lane, Jonathan A.; Wilson, Jamie R.; Christie, Gervase Maxwell; Petigny, Nathalie; Sarantopoulos, Christos, Catalyst containing oxygen transport membrane.
  3. Cubukcu Esin ; Dahar Steve ; Dodeja Ravi ; Gordon Arnold Z. ; Kalynchuk Daniel ; Prince Troy Shannon ; Soltesz Justin ; Waite Mike, Ceramic composite electrolytic device and methods for manufacture thereof.
  4. Chen,Hancun; Chen,Jack C.; Wang,Weitung, Ceramic manufacture for a composite ion transport membrane.
  5. Dabrowski, Bogdan; Remsen, Steven, Ceramic materials for gas separation and oxygen storage.
  6. Dabrowski, Bogdan; Remsen, Steven, Ceramic materials for gas separation and oxygen storage.
  7. Suzuki,Takehiro; Fukaya,Atsushi; Taguchi,Hisatomi; Nagaya,Shigeo; Komura,Kiyoshi; Watanabe,Syozo, Ceramic member with oxygen ion conductivity and use thereof.
  8. Sirman, John Derrick; Chen, Jack C., Ceramic membrane structure and oxygen separation method.
  9. Mackay Richard ; Sammells Anthony F., Ceramic membranes for catalytic membrane reactors with high ionic conductivities and low expansion properties.
  10. Kelly, Sean M.; Christie, Gervase Maxwell; Robinson, Charles; Wilson, Jamie R.; Gonzalez, Javier E.; Doraswami, Uttam R., Ceramic oxygen transport membrane array reactor and reforming method.
  11. Kelly, Sean M.; Christie, Gervase Maxwell; Robinson, Charles; Wilson, Jamie R.; Gonzalez, Javier E.; Doraswami, Uttam R., Ceramic oxygen transport membrane array reactor and reforming method.
  12. Kelly, Sean M.; Christie, Gervase Maxwell; Rosen, Lee J.; Robinson, Charles; Wilson, Jamie R.; Gonzalez, Javier E.; Doraswami, Uttam R., Ceramic oxygen transport membrane array reactor and reforming method.
  13. Chen, Jack C.; Stawisuck, Valerie M.; Prasad, Ravi, Cold isopressing method.
  14. Visco, Steven J.; Jacobson, Craig P.; DeJonghe, Lutgard C., Composite electrode/electrolyte structure.
  15. Chen,Jack C.; Besecker,Charles J.; Chen,Hancun; Robinson,Earil T., Composite oxygen ion transport element.
  16. Lane, Jonathan A.; Lu, Zigui; Plonczak, Pawel J., Composite oxygen ion transport membrane.
  17. Nagabhushana, Nagendra; Lane, Jonathan Andrew; Christie, Gervase Maxwell; van Hassel, Bart Antonie, Composite oxygen ion transport membrane.
  18. Christie, Gervase Maxwell; Lane, Jonathan A., Composite oxygen transport membrane.
  19. Lu, Zigui; Plonczak, Pawel J.; Lane, Jonathan A., Composite oxygen transport membrane.
  20. Carolan Michael Francis ; Dyer Paul Nigel ; Motika Stephen Andrew, Compositions capable of operating under high oxygen partial pressures for use in solid-state oxygen producing devices.
  21. Carolan,Michael Francis; Watson,Matthew James; Minford,Eric; Motika,Stephen Andrew; Taylor,Dale M., Controlled heating and cooling of mixed conducting metal oxide materials.
  22. Carolan Michael Francis ; Dyer Paul Nigel ; Motika Stephen Andrew ; Alba Patrick Benjamin, Coompositions capable of operating under high carbon dioxide partial pressures for use in solid-state oxygen producing d.
  23. Lambert, Tristan Hayes; Campos, Luis M; Bandar, Jeffrey; Dell, Emma Jane, Cyclopropenium polymers and methods for making the same.
  24. Shen Yousheng (Salt Lake City UT) Joshi Ashok V. (Salt Lake City UT) Taylor Dale M. (Salt Lake City UT) Boettcher Michael J. (West Jordan UT) Krist Kevin (Palatine IL) Virkar Anil V. (Salt Lake City , Enhancement of mechanical properties of ceramic membranes and solid electrolytes.
  25. Carolan Michael Francis ; Dyer Paul Nigel ; Motika Stephen Andrew ; Alba Patrick Benjamin, Fluid separation devices capable of operating under high carbon dioxide partial pressures which utilize creep-resistant solid-state membranes formed from a mixed conducting multicomponent metallic ox.
  26. Jacobson, Craig P.; Visco, Steven J.; DeJonghe, Lutgard C.; Stefan, Constantin I., Fluorine separation and generation device.
  27. Jacobson,Craig P.; Visco,Steven J.; De Jonghe,Lutgard C.; Stefan,Constantin I., Fluorine separation and generation device.
  28. Jacobson,Craig P.; Visco,Steven J.; De Jonghe,Lutgard C.; Stefan,Constantin I., Fluorine separation and generation device.
  29. Lin, Jiefeng; Kelly, Sean M., High aspect ratio catalytic reactor and catalyst inserts therefor.
  30. Lin Yue-Sheng ; MacLean Donald L. ; Zeng Yongxian, High temperature adsorption process.
  31. Tucker, Michael C.; Jacobson, Craig P., Integrated seal for high-temperature electrochemical device.
  32. Gottzman Christian Friedrich ; Prasad Ravi, Integrated solid electrolyte ionic conductor separator-cooler.
  33. Wang Weitung ; Chen Jack C. ; Apte Prasad ; Mazanec Terry Joseph, Ion conducting ceramic membrane and surface treatment.
  34. DeJonghe, Lutgard; Jacobson, Craig; Tucker, Michael; Visco, Steven, Joined concentric tubes.
  35. Haase, Richard Alan; Smaardyk, John, Manufacture of water chemistries.
  36. MacKay, Richard; Schwartz, Michael; Sammells, Anthony F., Materials and methods for the separation of oxygen from air.
  37. Risdal, Turid; Julsrud, Stein; Naas, Tyke; Vigeland, Bent Erlend, Membrane and use thereof.
  38. Vigeland, Bent; Glenne, Rita; Breivik, Turid; Julsrud, Stein, Membrane and use thereof.
  39. Kleefisch Mark S. ; Udovich Carl A. ; Masin Joseph G. ; Kobylinski Thaddeus P., Membrane reactor hollow tube module with ceramic/metal interfacial zone.
  40. Besecker,Charles J.; Mazanec,Terry J.; Xu,Sherman J.; Rytter,Erling, Membrane systems containing an oxygen transport membrane and catalyst.
  41. Jacobson, Craig P.; Visco, Steven J.; DeJonghe, Lutgard C., Metal current collect protected by oxide film.
  42. Chakravarti, Shrikar; Drnevich, Raymond Francis; Shah, Minish M.; Stuckert, Ines C., Method and system for adjusting synthesis gas module in an oxygen transport membrane based reforming system.
  43. Chakravarti, Shrikar; Drnevich, Raymond Francis; Burgers, Kenneth L., Method and system for producing a synthesis gas in an oxygen transport membrane based reforming system that is free of metal dusting corrosion.
  44. Chakravarti, Shrikar; Drnevich, Raymond F.; Stuckert, Ines C.; Shah, Minish M., Method and system for producing a synthesis gas using an oxygen transport membrane based reforming system with secondary reforming and auxiliary heat source.
  45. Chakravarti, Shrikar; Drnevich, Raymond F.; Stuckert, Ines C.; Shah, Minish M., Method and system for producing hydrogen using an oxygen transport membrane based reforming system with secondary reforming.
  46. Stuckert, Ines C.; Chakravarti, Shrikar; Drnevich, Raymond F., Method and system for producing methanol using an integrated oxygen transport membrane based reforming system.
  47. Jacobson,Craig P.; Visco,Steven J.; De Jonghe,Lutgard C., Method for making dense crack free thin films.
  48. Visco, Steven J.; Jacobson, Craig; DeJonghe, Lutgard C., Method for making thin-film ceramic membrane on non-shrinking continuous or porous substrates by electrophoretic deposition.
  49. Waller, David, Method for manufacturing a membrane.
  50. Gonzalez, Javier E.; Grant, Arthur F., Method for sealing an oxygen transport membrane assembly.
  51. Chen Chieh-Cheng ; Prasad Ravi, Method of fabricating ceramic membranes.
  52. Visco, Steven J.; Jacobson, Craig P.; DeJonghe, Lutgard C., Method of making a layered composite electrode/electrolyte.
  53. Cutler, Raymond Ashton; Hutchings, Kent Neal; Wilson, Merrill Anderson; Hollis, Ronald Almy; Taylor, Dale M., Method of making an ion transport membrane oxygen separation device.
  54. Anil V. Virkar ; Christian Friedrich Gottzmann ; Ravi Prasad ; Bart Antonie Van Hassel, Method of separating oxygen with the use of composite ceramic membranes.
  55. Kelly, Sean M.; Swami, Sadashiv M.; Peck, John D., Method of thermally-stabilizing an oxygen transport membrane-based reforming system.
  56. Mackay Richard ; Schwartz Michael ; Sammells Anthony F., Methods for separating oxygen from oxygen-containing gases.
  57. Cable Thomas L. ; Petrik Michael A. ; Lee Benson P., Microspheres for combined oxygen separation, storage and delivery.
  58. Pamela Van Calcar ; Richard Mackay ; Anthony F. Sammells, Mixed ionic and electronic conducting ceramic membranes for hydrocarbon processing.
  59. Van Calcar, Pamela; Mackay, Richard; Sammells, Anthony F., Mixed ionic and electronic conducting ceramic membranes for hydrocarbon processing.
  60. Chen Chieh-Cheng ; Prasad Ravi, Multi-phase solid electrolyte ionic transport membrane and method for fabricating same.
  61. Henry C. Foley ; Michael Strano ; Madhav Acharya ; Brenda A. Raich, Nanoporous carbon catalytic membranes and method for making the same.
  62. Phillips Robert John,GBX ; Simons Adrian,GBX, Oxygen generating device.
  63. Mazanec Terry J. (Solon OH) Cable Thomas L. (Newbury OH), Oxygen permeable mixed conductor membranes.
  64. Mazanec Terry J. ; Cable Thomas L., Oxygen permeable mixed conductor membranes.
  65. Mazanec, Terry J.; Cable, Thomas L., Oxygen separation process.
  66. Kromer, Brian R.; Litwin, Michael M.; Kelly, Sean M., Oxygen transport membrane based advanced power cycle with low pressure synthesis gas slip stream.
  67. Kelly, Sean M.; Chakravarti, Shrikar; Li, Juan, Oxygen transport membrane reactor based method and system for generating electric power.
  68. Carolan, Michael Francis; Dyer, legal representative, Kathryn Beverly; Wilson, Merrill Anderson; Ohrn, Ted R.; Kneidel, Kurt E.; Peterson, David; Chen, Christopher M.; Rackers, Keith Gerard; Dyer, Paul Nigel, Planar ceramic membrane assembly and oxidation reactor system.
  69. Carolan,Michael Francis; Dyer, legal representative,Kathryn Beverly; Wilson,Merrill Anderson; Ohm,Ted R.; Kneidel,Kurt E.; Peterson,David; Chen,Christopher M.; Rackers,Keith Gerard; Dyer, deceased,Paul Nigel, Planar ceramic membrane assembly and oxidation reactor system.
  70. Jacobson, Craig P.; Visco, Steven J.; De Jonghe, Lutgard C., Planar electrochemical device assembly.
  71. Jacobson,Craig P.; Visco,Steven J.; De Jonghe,Lutgard C., Planar electrochemical device assembly.
  72. Chen, Jack Chieh-Cheng; Chen, Hancun; Prasad, Ravi; Whichard, Glenn, Plasma sprayed oxygen transport membrane coatings.
  73. Jacobson, Craig P.; Visco, Steven J.; DeJonghe, Lutgard C., Process for making dense thin films.
  74. Breshears, John Edward, Rainscreen with integrated heat and moisture exchanger.
  75. Taguchi,Hisatomi; Fukaya,Atsushi; Nagaya,Shigeo; Komura,Kiyoshi; Hirano,Kiichi; Tenjikukatsura,Hiroshi, Raw material powder for molding oxide ion conductor, and method for manufacturing the same.
  76. Tucker, Michael C.; Jacobson, Craig P.; De Jonghe, Lutgard C.; Visco, Steven J., Sealed joint structure for electrochemical device.
  77. Apte,Prasad S.; Schwartz,Joseph M.; White,James E., Separation and reaction method utilizing an oxygen ion transport element.
  78. Rogowski,Dirk; Pfaff,Hans Georg; Nagel,Alwin, Sintered shaped body, whose surface comprises a porous layer and a method for the production thereof.
  79. Gottzmann Christian Friedrich ; Prasad Ravi ; Bergsten Victor Emmanuel ; Keskar Nitin Ramesh ; van Hassel Bart Antonie, Solid Electrolyte ionic conductor reactor design.
  80. Chen Chieh Cheng ; Prasad Ravi, Solid electrolyte membrane with mechanically-enhancing constituents.
  81. Chen Chieh Cheng ; Prasad Ravi ; Gottzmann Christian Friedrich, Solid electrolyte membrane with porous catalytically-enhancing constituents.
  82. Visco, Steven J.; Jacobson, Craig P.; DeJonghe, Lutgard C., Solid state electrochemical composite.
  83. Schwartz Michael ; White James H. ; Sammells Anthony F., Solid state oxygen anion and electron mediating membrane and catalytic membrane reactors containing them.
  84. Schwartz Michael ; White James H. ; Sammels Anthony F., Solid state oxygen anion and electron mediating membrane and catalytic membrane reactors containing them.
  85. Schwartz, Michael; White, James H.; Sammells, Anthony F., Solid state oxygen anion and electron mediating membrane and catalytic membrane reactors containing them.
  86. Wachsman Eric D. ; Jayaweera Palitha ; Lowe David M. ; Pound Bruce G., Stable high conductivity functionally gradient compositionally layered solid state electrolytes and membranes.
  87. Wachsman Eric D. ; Jayaweera Palitha ; Lowe David M. ; Pound Bruce G., Stable high conductivity functionally gradient compositionally layered solid state electrolytes and membranes.
  88. Visco, Steven J.; Jacobson, Craig P.; DeJonghe, Lutgard C., Structures and fabrication techniques for solid state electrochemical devices.
  89. Visco, Steven J.; Jacobson, Craig P.; DeJonghe, Lutgard C., Structures and fabrication techniques for solid state electrochemical devices.
  90. Visco,Steven J.; Jacobson,Craig P.; DeJonghe,Lutgard C., Structures and fabrication techniques for solid state electrochemical devices.
  91. Visco,Steven J.; Jacobson,Craig P.; DeJonghe,Lutgard C., Structures and fabrication techniques for solid state electrochemical devices.
  92. Yoshida, Kentaro; Hikata, Takeshi; Okuda, Nobuyuki; Uemura, Takashi, Substance separation structure and method of preparing the same.
  93. Foley Henry C. ; Acharya Madhav ; Raich Brenda A., Supported carbogenic molecular sieve membrane and method of producing the same.
  94. Nataraj Shankar ; Russek Steven Lee, Synthesis gas production by ion transport membranes.
  95. Kelly, Sean M., System and method for air temperature control in an oxygen transport membrane based reactor.
  96. Kelly, Sean M., System and method for temperature control in an oxygen transport membrane based reactor.
  97. Dyer Paul N. (Allentown PA) Bright Jeffrey D. (Salt Lake City UT) Carolan Michael F. (Allentown PA) Minford Eric (Laurys Station PA) Richards Robin E. (Lansdale PA) Russek Steven L. (Allentown PA) Ta, Tubular solid-state membrane module.
  98. Michael Schwartz ; James H. White ; Anthony F. Sammells, Two component-three dimensional catalysis.
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로